邮箱
官方微信
中国农科院公众号
  • 首页
  • 实验室概况
    实验室简介
    实验室领导
    学术委员会
    历届实验室领导
    历届学术委员会
    组织框架
  • 科学研究
    科研进展
    发表论文
    出版专著
    获奖成果
  • 研究队伍
    院士风采
    杰出人才
    实验室PI
  • 人才培养
    博士后流动站
    研究生培养
    博士生导师
    硕士生导师
  • 开放交流
    学术交流
    开放课题
    合作平台
  • 公用平台
    仪器设备
    开放预约
    平台动态
    野外台站
    数据中心
  • 党建文化
    科学家精神
    学术讲堂
  • 管理制度
邮箱
官方微信
中国农科院公众号
  • 首页
  • 实验室概况
    实验室简介
    实验室领导
    学术委员会
    历届实验室领导
    历届学术委员会
    组织框架
  • 科学研究
    科研进展
    发表论文
    出版专著
    获奖成果
  • 研究队伍
    院士风采
    杰出人才
    实验室PI
  • 人才培养
    博士后流动站
    研究生培养
    博士生导师
    硕士生导师
  • 开放交流
    学术交流
    开放课题
    合作平台
  • 公用平台
    仪器设备
    开放预约
    平台动态
    野外台站
    数据中心
  • 党建文化
    科学家精神
    学术讲堂
  • 管理制度
首页> 最新文章
分享到

Yuan Shi, Xinglu Pan, Xiaohu Wu, Jun Xu, Wensheng Xiang, Zhiyuan Li, Yongquan Zheng, Xiangjing Wang*, Fengshou Dong*, First insight into the formation of transformation products of a biopesticide guvermectin in rat and its health risk.

发布时间:2025-03-06

Sci Total Environ, 2024, https:// doi:10.1016/j.scitotenv.2024.176408

Abstract

Guvermectin is a new chemical isolated from the microbial metabolites and is registered as a novel plant growth regulator. However, the biotransformation behavior and toxicity of guvermectin to mammals remain unclear and have unknown implications for consumers or occupationally exposed persons. Therefore, we investigated the biotransformation of guvermectin in vivo and in vitro, its effects on CYP450s activities, and its oral toxicity in rats. The results showed that guvermectin could be rapidly absorbed when administered orally and eliminated rapidly in the serum, with a half-life of 6.3 h. Four phase І metabolism products of guvermectin in the serum were screened and identified using UPLC-QTOF/MS. Two products, adenine and psicofuramine, were confirmed using reference standards. Hydrolysis and oxidation reactions were the main transformation pathways. Oral toxicity tests in rats showed that guvermectin exhibited light toxicity to rats (LC50 > 5000 mg/kg b.w.). However, an in vitro probe drug experiment revealed that guvermectin could induce CYP2D6 activity, and a lower concentration of guvermectin exhibited a stronger effect on CYP2D6 than higher concentration (1.38-fold). Molecular docking studies implied that guvermectin was an antagonist of CYP1A2, CYP2C9, and CYP3A4. These findings provided a better understanding of the environmental and human health risks associated with guvermectin and promote its rational use. However, the potential risk of endocrine disruption can not be ignored due to the presence of nucleoside-like metabolites.

Sci Total Environ, IF=8.2

https://pubmed.ncbi.nlm.nih.gov/39306131/ 

打印本页
关闭本页

地址:北京市海淀区圆明园西路2号南2门邮编:100193

中国农业科学院植物保护研究所版权所有

京ICP备05034986号-1京公网安备 11010802025499 号

技术支持:中国农业科学院农业信息研究所